Jensen Bettina E B, Dávila Izaskun, Zelikin Alexander N
Department of Chemistry, Aarhus University , Aarhus, Denmark.
iNANO Interdisciplinary Nanoscience Center, Aarhus University , Aarhus, Denmark.
J Phys Chem B. 2016 Jul 7;120(26):5916-26. doi: 10.1021/acs.jpcb.6b01381. Epub 2016 Mar 9.
Poly(vinyl alcohol) hydrogels have a long and successful history of applications in biomedicine. Historically, these matrices were developed to be nondegradable-limiting their utility to applications as permanent implants. For tissue engineering and drug delivery, herein we develop spontaneously eroding physical hydrogels based on PVA. We characterize in detail a mild, noncryogenic method of producing PVA physical hydrogels using poly(ethylene glycol) as a gelating agent, and investigate PVA molar mass as a means to define the kinetics of erosion of these biomaterials. PVA hydrogels are characterized for associated inflammatory response in adhering macrophages, antiproliferative effects mediated through delivery of cytotoxic drugs to myoblasts, and pro-proliferative activity achieved via presentation of conjugated growth factors to endothelial cells. Together, these data present a multiangle characterization of these novel multifunctional matrices for applications in tissue engineering and drug delivery mediated by implantable biomaterials.
聚乙烯醇水凝胶在生物医学领域有着悠久且成功的应用历史。从历史角度来看,这些基质最初被开发为不可降解的,这限制了它们仅能作为永久性植入物使用。对于组织工程和药物递送而言,在此我们基于聚乙烯醇开发了可自发降解的物理水凝胶。我们详细描述了一种使用聚乙二醇作为凝胶剂来制备聚乙烯醇物理水凝胶的温和、非低温方法,并研究聚乙烯醇的摩尔质量,以此作为定义这些生物材料降解动力学的一种手段。对聚乙烯醇水凝胶进行了表征,包括其在黏附巨噬细胞中的相关炎症反应、通过向成肌细胞递送细胞毒性药物介导的抗增殖作用,以及通过向内皮细胞呈现共轭生长因子实现的促增殖活性。总之,这些数据从多角度对这些新型多功能基质进行了表征,以便其应用于由可植入生物材料介导的组织工程和药物递送。